J. Rashidiani, Khadijeh Eskandari, R. Ranjbar, H. Kooshki, D. Afshar, F. S. Dehkordi
{"title":"Application of Gold Core-Shell Magnetic Nanoparticles as an Immunosensor for the Detection of Vibrio cholerae","authors":"J. Rashidiani, Khadijeh Eskandari, R. Ranjbar, H. Kooshki, D. Afshar, F. S. Dehkordi","doi":"10.30491/JABR.2020.230689.1222","DOIUrl":null,"url":null,"abstract":"Introduction: For rapid and sensitive detection of Vibrio cholerae an accurate assay is needed. In the present study, a gold-coated magnetic nanoparticle (GMNP) was investigated for the detection of V. cholerae. Materials and Methods: GMNPs were synthesized and functionalized by 11-mercapto-undecanoic acid (MUA) as a linker for immobilization of IgG against V. cholerae OmpW antigen. In the next step, IgG was coupled with carboxylic group of MUA using EDC / NHS and the IgG/GMNPs nanocomposite created and finally, the bacterium was detected in a sandwich model ELISA. Results: The IgG/GMNPs nanocomposite could detect V.cholerae in a concentration range from 2.5×10-2 to 1.5 × 105 N/ml (number of V.cholerae per ml). The correlation coefficient was 0.99 and the detection limit was 16 N/ml. Conclusions: In this study, the procedure of antibody immobilization on magnetic nanoparticles was designed. So that, by using magnetic nanoparticles, the pre-concentration as a time-consuming step was removed and the sensitivity of V. cholerae determination was increased. Also, this method can be extended to detect other microorganisms.","PeriodicalId":14945,"journal":{"name":"Journal of Applied Biotechnology Reports","volume":" ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2021-03-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Applied Biotechnology Reports","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.30491/JABR.2020.230689.1222","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"Biochemistry, Genetics and Molecular Biology","Score":null,"Total":0}
引用次数: 0
Abstract
Introduction: For rapid and sensitive detection of Vibrio cholerae an accurate assay is needed. In the present study, a gold-coated magnetic nanoparticle (GMNP) was investigated for the detection of V. cholerae. Materials and Methods: GMNPs were synthesized and functionalized by 11-mercapto-undecanoic acid (MUA) as a linker for immobilization of IgG against V. cholerae OmpW antigen. In the next step, IgG was coupled with carboxylic group of MUA using EDC / NHS and the IgG/GMNPs nanocomposite created and finally, the bacterium was detected in a sandwich model ELISA. Results: The IgG/GMNPs nanocomposite could detect V.cholerae in a concentration range from 2.5×10-2 to 1.5 × 105 N/ml (number of V.cholerae per ml). The correlation coefficient was 0.99 and the detection limit was 16 N/ml. Conclusions: In this study, the procedure of antibody immobilization on magnetic nanoparticles was designed. So that, by using magnetic nanoparticles, the pre-concentration as a time-consuming step was removed and the sensitivity of V. cholerae determination was increased. Also, this method can be extended to detect other microorganisms.
期刊介绍:
The Journal of Applied Biotechnology Reports (JABR) publishes papers describing experimental work relating to all fundamental issues of biotechnology including: Cell Biology, Genetics, Microbiology, Immunology, Molecular Biology, Biochemistry, Embryology, Immunogenetics, Cell and Tissue Culture, Molecular Ecology, Genetic Engineering and Biological Engineering, Bioremediation and Biodegradation, Bioinformatics, Biotechnology Regulations, Pharmacogenomics, Gene Therapy, Plant, Animal, Microbial and Environmental Biotechnology, Nanobiotechnology, Medical Biotechnology, Biosafety, Biosecurity, Bioenergy, Biomass, Biomaterials and Biobased Chemicals and Enzymes. Journal of Applied Biotechnology Reports promotes a special emphasis on: -Improvement methods in biotechnology -Optimization process for high production in fermentor systems -Protein and enzyme engineering -Antibody engineering and monoclonal antibody -Molecular farming -Bioremediation -Immobilizing methods -biocatalysis